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首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >On the suppression of background signals originating from NMR hardware components. Application to zero echo time imaging and relaxation time analysis
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On the suppression of background signals originating from NMR hardware components. Application to zero echo time imaging and relaxation time analysis

机译:抑制源自NMR硬件组件的背景信号。在零回波时间成像和弛豫时间分析中的应用

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Modern NMR imaging systems used for biomedical research are equipped with B-0 gradient systems with strong maximum gradient strength and short switching time enabling H-1 NMR measurements of samples with very short transverse relaxation times. However, background signal originating from non-optimized RF coils may hamper experiments with ultrashort delays between RF excitation and signal reception. We demonstrate that two simple means, outer volume suppression and the use of shaped B-0 fields produced by higher-order shim coils, allow a considerable suppression of disturbing background signals. Thus, the quality of NMR images acquired at ultrashort or zero echo time is improved and systematic errors in quantitative data evaluation are avoided. Fields of application comprise MRI with ultrashort echo time or relaxation time analysis, for both biomedical research and characterizing porous media filled with liquids or gases. (C) 2015 Elsevier Inc. All rights reserved.
机译:用于生物医学研究的现代NMR成像系统配备了B-0梯度系统,该系统具有强大的最大梯度强度和较短的切换时间,从而能够以非常短的横向弛豫时间对样品进行H-1 NMR测量。但是,源自未优化的RF线圈的背景信号可能会干扰RF激励和信号接收之间超短延迟的实验。我们证明了两种简单的方法,即抑制外部体积和使用由高阶匀场线圈产生的成形B-0场,可以显着抑制干扰的背景信号。因此,提高了在超短或零回波时间采集的NMR图像的质量,避免了定量数据评估中的系统误差。应用领域包括具有超短回波时间或弛豫时间分析的MRI,用于生物医学研究和表征充满液体或气体的多孔介质。 (C)2015 Elsevier Inc.保留所有权利。

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